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Published on: January 27, 2019
The Developing Microbiome From Birth to 3 Years: The Gut-Brain Axis and Neurodevelopmental Outcomes
Hannah E Laue1, Modupe O Coker1,2, Juliette C Madan1,3
1Department of Epidemiology, Geisel School of Medicine at Dartmouth, Hanover, NH, United States.
Insights
The early-life microbiome (birth to age 3) is crucial for neurodevelopment and neuropsychiatric disorders. Interventions targeting the gut-brain axis during this sensitive period offer opportunities for prevention and treatment.
Area of Science:
- Neuroscience
- Microbiology
- Developmental Biology
Background:
- Research on the microbiome's role in neurodevelopmental and neuropsychiatric disorders has surged.
- The gut-brain axis is increasingly recognized for its influence on brain development and function.
- Early life (birth to 3 years) is a critical window for microbiome development and its impact on neurodevelopment.
Purpose of the Study:
- To review the developing intestinal microbiome in early life and its relationship with neurodevelopment.
- To explore the microbiome's role in neurobehavioral outcomes and cognitive development.
- To discuss microbiome-targeted interventions and the influence of environmental chemicals.
Main Methods:
- Literature review focusing on the developing intestinal microbiome.
- Analysis of studies on the gut-brain axis and neurodevelopmental disorders.
- Integration of murine models and epidemiological studies.
Main Results:
- The early-life microbiome significantly influences neurodevelopment and neuropsychiatric health.
- Immunological mechanisms are key mediators in the gut-brain axis during early development.
- Dysbiosis is linked to neurodevelopmental disorders, while a healthy microbiome promotes well-being.
Conclusions:
- Targeting the microbiome in early life presents a promising avenue for preventing neurodevelopmental disorders.
- Further research is needed to identify sensitive populations and optimize microbiome-based interventions.
- Understanding the microbe-human connection is vital for optimizing neurodevelopmental outcomes.
Abstract:
The volume and breadth of research on the role of the microbiome in neurodevelopmental and neuropsychiatric disorders has expanded greatly over the last decade, opening doors to new models of mechanisms of the gut-brain axis and therapeutic interventions to reduce the burden of these outcomes. Studies have highlighted the window of birth to 3 years as an especially sensitive window when interventions may be the most effective. Harnessing the powerful gut-brain axis during this critical developmental window clarifies important investigations into the microbe-human connection and the developing brain, affording opportunities to prevent rather than treat neurodevelopmental disorders and neuropsychiatric illness. In this review, we present an overview of the developing intestinal microbiome in the critical window of birth to age 3; and its prospective relationship with neurodevelopment, with particular emphasis on immunological mechanisms. Next, the role of the microbiome in neurobehavioral outcomes (such as autism, anxiety, and attention-deficit hyperactivity disorder) as well as cognitive development are described. In these sections, we highlight the importance of pairing mechanistic studies in murine models with large scale epidemiological studies that aim to clarify the typical health promoting microbiome in early life across varied populations in comparison to dysbiosis. The microbiome is an important focus in human studies because it is so readily alterable with simple interventions, and we briefly outline what is known about microbiome targeted interventions in neurodevelopmental outcomes. More novel examinations of known environmental chemicals that adversely impact neurodevelopmental outcomes and the potential role of the microbiome as a mediator or modifier are discussed. Finally, we look to the future and emphasize the need for additional research to identify populations that are sensitive to alterations in their gut microbiome and clarify how interventions might correct and optimize neurodevelopmental outcomes.
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